557 results on '"Ch, D."'
Search Results
52. Pyruvate dehydrogenase complex deficiency – a rare mitochondrial disease in a 4-year-old boy
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S. Ya. Volgina, Ch. D. Khaliullina, E. A. Nikolaeva, R. M. Sayfullina, and A. R. Shakirova
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children, mitochondrial disease, pyruvate dehydrogenase deficiency ,medicine.diagnostic_test ,business.industry ,Mitochondrial disease ,Disease ,Carbohydrate metabolism ,Bioinformatics ,medicine.disease ,Pediatrics ,RJ1-570 ,Pyruvate dehydrogenase deficiency ,Exon ,Lactic acidosis ,Pediatrics, Perinatology and Child Health ,Magnetic resonance imaging of the brain ,Medicine ,business ,Gene - Abstract
Pyruvate dehydrogenase deficiency is a rare mitochondrial disease characterized by a wide range of neurometabolic manifestations. The disease is caused by insuffici ency of this multienzyme complex, which ensures the integration of pyruvate (the carbohydrate metabolism product) into the cellular energy metabolism. This complex deficiency is mostly caused by the mutations in the E1 alpha subunit-encoding PDHA1 (Xp22.1) gene. The article presents a clinical case of a boy with pyruvate dehydrogenase deficiency. The patient was diagnosed on the basis of a combination of clinical, laboratory and instrumental data: retardation in physical and psychomotor development, diffuse muscle hypotension, lactic acidosis, neurological manifestations, thalamus signal changes (according to magnetic resonance imaging of the brain), hemizygous mutations of the 12th exon of the PDHA1 gene during exomic DNA sequencing. We observed positive dynamics against metabolic therapy. The authors emphasize the importance of the timely diagnostics and initiation of metabolic therapy. Late diagnostics causes irreversible complications and significantly worsens the quality of patient’s life
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- 2020
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53. The role of macrophages in different stages of experimental allergic encephalomyelitis in Lewis rats
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Dijkstra, Ch. D., Ruuls, S. R., Huitinga, I., and van Furth, Ralph, editor
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- 1992
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54. Fuzzy Analysis of Groundwater Resources Including Incomplete Data of Aquifer Spatial Extent
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Moutsopoulos, Κ. N., Chalkidis, I. N., and Tzimopoulos, Ch. D.
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Mechanical engineering and machinery ,TJ1-1570 - Published
- 2005
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55. An Efficient Buffer Overflow Control Scheme to Mitigate Packet Loss in Manets
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B Purushotham, Ch D V Subba Rao, and Blue Eyes Intelligence Engineering & Sciences Publication (BEIESP)
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Scheme (programming language) ,Environmental Engineering ,business.industry ,Computer science ,ComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKS ,Control (management) ,General Engineering ,B3732129219/2020©BEIESP ,2249-8958 ,Computer Science Applications ,Packet loss ,business ,computer ,Buffer Overflow, Mobile Ad hoc Networks, Packet Loss, Queue Management ,Computer network ,computer.programming_language ,Buffer overflow - Abstract
MANET (Mobile Ad hoc Network) is self-configuring, self-organizing, infrastructure-less network of mobile devices connected without wires. Because of the dynamic changes in the network topology, there is no centralized control in ad hoc networks. So, mobile nodes can communicate with each other via intermediate nodes. The buffer size of intermediate nodes plays a significant role to hold packets in the buffer before dropping the newly arrived packets. In MANET, buffer overflow (congestion) occurs in any intermediary nodes when data packets pass through source to destination and incurs packet loss, which causes the performance degradations of a network. Congestion can be reduced by using several Active Queue Management [AQM] techniques. Queue Management Node or “QMN” is an active queue management strategy to control packet drops by assigning space of a buffer node to all its neighbouring nodes dynamically depending upon the total number of packets received from its neighbours. In this scheme, authors did not take into account the impact of collaboration between neighbors of a central node. They only consider the characteristics of nodes, while ignoring the message properties in MANET. And also a new node has to be waiting until it will get enough equal space from the QMN along with other neighbor nodes. During this waiting period, high packet loss can be occurred. So, an efficient buffer overflow control scheme is required to make sure every node has adequate storage space to hold the data once the buffer of the node is near to congestion. In this paper, we proposed a scheme that integrates QMN technique with combinational buffer management (CBM) strategy, which includes both the features of messages and nodes, and transfer the duplicated messages to neighbour node for total utility optimization, rather than deleting them. By using this scheme packet loss can be mitigated in MANETs efficiently. Our simulation results here reveal that, the proposed scheme achieves better performance than other existing schemes in terms of packet delivery ratio, throughput, overhead ratio and end to end delay
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- 2020
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56. Mucopolysaccharidosis type I ― Hurler syndrome
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N. V. Rylova, A. A. Shakirova, Ch. D. Khaliullina, R. M. Sayfullina, L. D. Cheminava, A. A. Volkova, and A. R. Khusainova
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Mucopolysaccharidosis type I ,Pathology ,medicine.medical_specialty ,business.industry ,medicine ,Hurler syndrome ,medicine.disease ,business - Published
- 2020
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57. Customer’s class transformation for profit maximization in multi-class setting of Telecom industry using probability estimation decision trees
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Ch. D. V. Subba Rao and JanapatyI Naga Muneiah
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Statistics and Probability ,Class (computer programming) ,Mathematical optimization ,Transformation (function) ,Artificial Intelligence ,Computer science ,Probability estimation ,General Engineering ,For profit ,Decision tree ,Maximization - Published
- 2019
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58. АНОМАЛІЇ СКЕЛЕТА РИБ У ВОДОЙМАХ ІЗ РІЗНИМ РІВНЕМ ЗАБРУДНЕННЯ РАДІОНУКЛІДАМИ
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V. V. Pavlovskyi, Dmitri Gudkov, Ch. D. Ganzha, O. Ye. Kahlian, and I. I. Abramiuk
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The development features of morphological anomalies of the sunbleak (Leucaspius delineates Heckel) skeleton in water bodies, characterized by background (neighbourhood of Kyiv City) and high (Chornobyl exclusion zone) levels of radionuclide contamination were studied. The impact of radionuclide contamination on the appearance of morphological skeletal anomalies of fish was established. The level of radiation background of the natural environment is constantly increasing due to the continuous flow of radioactive substances into the aquatic and terrestrial ecosystems. The causes of the significant deterioration of the existing state are the emergencies at the nuclear fuel cycle enterprises, related to the radionuclide emissions, among which the Chornobyl NPP accident is the most massive catastrophe in the history of nuclear energy, both in terms of the amount of radioactive substances that have been released into the environment and the area of territories that have been contaminated. Despite the fact that part of the radionuclides has decayed more than three decades after the accident, other long-lived substances remain sources of additional ionizing radiation in the environment. This necessitates the study and evaluation of all processes related to radioactive contamination. One of the important tasks of radioecology is to study the characteristics of the receipt, migration and accumulation of radioactive substances by components of aquatic biogeocenosa and their impact on the biota. The radionuclides released into aquatic ecosystems migrate and are most effectively accumulated by the upper trophic levels to which the fish belongs, serving as an important object of radioecological monitoring. The relevance of this study is to detect the influence of radionuclide contamination on the appearance of morphological skeletal anomalies in the fish species typical for the reservoirs of the Chornobyl Exclusion Zone, which is a representative exemplar of fresh aquatic ecosystems, taking into account the peculiarities of its way of existence. The novelty of the work is determined by the fact that for the mentioned reservoirs the relevant study was conducted for the first time.
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- 2019
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59. POSSIBILITY OF CONSTITUTION OF CIVILIZATION / CULTURE AS A COLLECTIVE SOCIО-HISTORICAL ACTOR
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Ch. D. Koprivitsa
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Civilization ,Constitution ,media_common.quotation_subject ,Political science ,Rehabilitation ,Physical Therapy, Sports Therapy and Rehabilitation ,Environmental ethics ,General Medicine ,media_common - Published
- 2019
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60. Lattices of convex subsets
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Batueva, Ts. Ch.-D.
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Cobalt ,Mathematics - Abstract
We characterize lattices that are isomorphic to the lattices of convex subsets of partially ordered sets of finite length. We also describe the class of lattices that are isomorphic to the lattices of convex subsets of n-ary trees for any integer n > 1. Bibliography:10 titles., UDC 512.56 + 512.57 + 514.146.01 The lattices of convex subsets of posets are an expressive example of convex geometries (cf. [1] and [2]). These lattices were studied by many [...]
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- 2013
61. Interleukin-11, an IL-6-like cytokine
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Hook, Ch. D. and Kuprash, D. V.
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- 2011
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62. European Respiratory Society guidelines on the diagnosis and treatment of chronic cough in adults and children
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Morice, A. H., primary, Millqvist, E., additional, Bieksiene, K., additional, Birring, S. S., additional, Dicpinigaitis, P., additional, Ribas, Ch. D., additional, Boon, M. H., additional, Kantar, A., additional, Lai, K., additional, McGarvey, L., additional, Rigau, D., additional, Satia, I., additional, Smith, J., additional, Song, W.-J., additional, Tonia, T., additional, Van den Berg, J. W.K., additional, Van Manen, M. J.G., additional, and Zacharasiewicz, A., additional
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- 2021
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63. The Importance of Agricultural Land Used in the Production of Agricultural Products in Greece
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Paschalidis, Ch. D, primary, Petropoulos, D. P, additional, Paschalidis, D. Ch, additional, Sotiropoulos, S. S, additional, Chamurliev, G. O, additional, and Papakonstantinou, L. D, additional
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- 2021
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64. The Evolution of Agricultural Employment in Greece
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Paschalidis, Ch. D., primary, Petropoulos, D. P., additional, Sotiropoulos, S. S, additional, Paschalidis, D. Ch., additional, Christodoulou, Ch. N., additional, and Papakonstantinou, L. D., additional
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- 2021
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65. RETRACTED ARTICLE: The importance of light-weight encryption cipher in restricted IoT systems to make intelligent technology safer for devices
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Kumar, K. Kranthi, primary, Srikanth, B., additional, Kasiviswanadham, Y., additional, Subbarao, Ch. D. V., additional, Indira, D. N. V. S. L. S., additional, and Pratap, N. L., additional
- Published
- 2021
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66. Compact Ion-Trap Quantum Computing Demonstrator
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Pogorelov, I., primary, Feldker, T., additional, Marciniak, Ch. D., additional, Postler, L., additional, Jacob, G., additional, Krieglsteiner, O., additional, Podlesnic, V., additional, Meth, M., additional, Negnevitsky, V., additional, Stadler, M., additional, Höfer, B., additional, Wächter, C., additional, Lakhmanskiy, K., additional, Blatt, R., additional, Schindler, P., additional, and Monz, T., additional
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- 2021
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67. ERCP: une étude unicentrique de 1020 cas
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Wakelin, Sonia J., Mccole, Diane C., Welsh, F., Carden, Claire, and Auld, Ch. D.
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- 2008
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68. Polystyrene Backbone Polymers Consisting of Alkyl-Substituted Triazine Side Groups for Phosphorescent OLEDs
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Beatrice Ch. D. Salert, Armin Wedel, Lutz Grubert, Thomas Eberle, Rémi Anémian, and Hartmut Krueger
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Materials of engineering and construction. Mechanics of materials ,TA401-492 - Abstract
This paper describes the synthesis of new electron-transporting styrene monomers and their corresponding polystyrenes all with a 2,4,6-triphenyl-1,3,5-triazine basic structure in the side group. The monomers differ in the alkyl substitution and in the meta-/paralinkage of the triazine to the polymer backbone. The thermal and spectroscopic properties of the new electron-transporting polymers are discussed in regard to their chemical structures. Phosphorescent OLEDs were prepared using the obtained electron-transporting polymers as the emissive layer material in blend systems together with a green iridium-based emitter 13 and a small molecule as an additional cohost with wideband gap characteristics (CoH-001). The performance of the OLEDs was characterized and discussed in regard to the chemical structure of the new electron-transporting polymers.
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- 2012
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69. All tight descriptions of major $3$-paths in $3$-polytopes without $3$-vertices
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Batueva, Ts. Ch.-D., primary, Borodin, O. V., additional, Ivanova, A. O., additional, and Nikiforov, D. V., additional
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- 2021
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70. Efficiency of Extraction of Petroleum Acids in an Extractor with Sieve Plates. Method of Calculation
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Murshudli, Ch. D.
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- 2002
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71. Enhanced Reliable ACK (ERACK) Scheme for Detecting Misbehaving Nodes in MANETs
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Chandra Mouly, D K L V, primary and Subba Rao, Dr. Ch D V, additional
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- 2020
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72. Impact assessment of cutting velocity on specific energy consumption of ice fracture process with sharp disc
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Ganzha, V A, primary, Voskresensky, G G, additional, Kaizer, Yu F, additional, Lunev, A S, additional, Ganzha, A V, additional, Satyshev, A S, additional, Karelin, E N, additional, and Chavyraa, Ch D, additional
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- 2020
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73. A Novel Method to Improve the Efficiency of Classification Phase of a Decision Tree
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Janapati, Naga Muneiah, primary and Ch D V, Subba Rao, additional
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- 2020
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74. Pyruvate dehydrogenase complex deficiency – a rare mitochondrial disease in a 4-year-old boy
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Volgina, S. Ya., primary, Khaliullina, Ch. D., additional, Nikolaeva, E. A., additional, Sayfullina, R. M., additional, and Shakirova, A. R., additional
- Published
- 2020
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75. Automation of management and control system for wellhead equipment of a production well
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Kramarenko, V A, primary, Lunev, A S, additional, Kaizer, Yu F, additional, Tyukanov, V L, additional, Lysyannikov, A V, additional, Kuznetsov, A V, additional, Chavyraa, Ch D, additional, and Sharshembiev, J S, additional
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- 2020
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76. High-power spectral beamsplitter for closely spaced frequencies
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Marciniak, Ch. D., primary, Rischka, A., additional, Wolf, R. N., additional, and Biercuk, M. J., additional
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- 2020
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77. Impact assessment of cutting angle of blade on storage density value of ice cutting process
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Ganzha, V A, primary, Lunev, A S, additional, Kaizer, Yu F, additional, Vereshchagin, V I, additional, Ganzha, A V, additional, Satyshev, A S, additional, Karelin, E N, additional, and Chavyraa, Ch D, additional
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- 2020
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78. Analysis of dump trucks' performance at the Tuva mining company
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S.-S. Sh. Saaya, O. O. Kuular, and Ch. D. Shavyraa
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Truck ,Mining engineering ,Business - Published
- 2018
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79. DESCRIBING MINOR 5-STARS IN 3-POLYTOPES WITH MINIMUM DEGREE 5 AND NO VERTICES OF DEGREE 6 OR 7.
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BATUEVA, CH-D., BORODIN, O. V., IVANOVA, A. O., and NIKIFOROV, D. V.
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- *
PLANAR graphs , *POLYTOPES , *MINORS - Abstract
In 1940, in attempts to solve the Four Color Problem, Henry Lebesgue gave an approximate description of the neighborhoods of 5-vertices in the class P5 of 3-polytopes with minimum degree 5. This description depends on 32 main parameters. (6; 6; 7; 7; 7), (6; 6; 6; 7; 9), (6; 6; 6; 6; 11), (5; 6; 7; 7; 8), (5; 6; 6; 7; 12), (5; 6; 6; 8; 10), (5; 6; 6; 6; 17), (5; 5; 7; 7; 13), (5; 5; 7; 8; 10), (5; 5; 6; 7; 27), (5; 5; 6; 6;1), (5; 5; 6; 8; 15), (5; 5; 6; 9; 11), (5; 5; 5; 7; 41), (5; 5; 5; 8; 23), (5; 5; 5; 9; 17), (5; 5; 5; 10; 14), (5; 5; 5; 11; 13). Not many precise upper bounds on these parameters have been obtained as yet, even for restricted subclasses in P5. In 2018, Borodin, Ivanova, Kazak proved that every forbidding vertices of degree from 7 to 11 results in a tight description (5; 5; 6; 6;1), (5; 6; 6; 6; 15), (6; 6; 6; 6; 6). Recently, Borodin, Ivanova, and Kazak proved every 3-polytope in P5 with no vertices of degrees 6, 7, and 8 has a 5-vertex whose neighborhood is majorized by one of the sequences (5; 5; 5; 5;1) and (5; 5; 10; 5; 12), which is tight and improves a corresponding description (5; 5; 5; 5;1), (5; 5; 9; 5; 17), (5; 5; 10; 5; 14), (5; 5; 11; 5; 13) that follows from the Lebesgue Theorem. [ABSTRACT FROM AUTHOR]
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- 2022
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80. Pan-cancer analysis of whole genomes
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Campbell, P. J. a., Abpemail, Author, Getz, G. b., C, D, Eemail, Author, Korbel, J. O. f., Gemail, Author, Stuart, hEmail Author, J. M., Jennings, J. L. i., Stein, J, L. D. k., Lemail, Author, Perry, M. D. m., Nahal-Bose, N, Ouellette, H. K. n., B. F. F. o., P, C. H. k., Li, Rheinbay, Q, E. b., E, Nielsen, R, Sgroi, G. P. r., D. C. r., Wu, C. -L. r., Faquin, W. C. r., Deshpande, V. r., Boutros, P. C. k., Q, S, Lazar, T, Hoadley, A. J. u., K. A. v., W, Louis, D. N. r., Dursi, L. J. k., Yung, X, Bailey, C. K. n., M. H. y., Z, Saksena, G. b., Raine, Abp, K. M., Buchhalter, Aa, I., Ab, Ac, Kleinheinz, Aa, K., Schlesner, Ac, Aa, M., Zhang, Ad, Wang, J. n., Ae, W., Wheeler, D. A., Af, Ding, Ag, L. y., Z, Simpson, Ah, J. T. k., Ai, O’Connor, B. D. n., Yakneen, Aj, Ellrott, S. g., Ak, K., Miyoshi, Al, N., Butler, Abp, A. P., Royo, Am, R., Shorser, S. I. k., Vazquez, Am, M., Rausch, An, Tiao, T. g., Waszak, G. b., Rodriguez-Martin, S. M. g., Ao, B., Ap, Aq, Shringarpure, Ar, S., D. -Y., As, Demidov, G. M., At, Au, Av, Delaneau, Aw, O., Ax, Ay, Hayashi, Al, S., Imoto, Habermann, N. g., Segre, A. V. b., Garrison, Az, Abp, E., Cafferkey, A. f., Alvarez, E. G., Ao, Heredia-Genestar, J. M., Ba, Muyas, At, F., Drechsel, At, O., Bruzos, Av, A. L., Ao, Temes, Ao, J., Zamora, Ap, Abp, Baez-Ortega, Bb, A., Kim, H. -L., Bc, Mashl, R. J. z., Bd, Ye, Be, K., Dibiase, Bf, Bg, A., Huang, K. -L. z., Letunic, Bh, Bi, I., Mclellan, M. D. y., Z, Ah, Newhouse, S. J. f., Shmaya, As, T., Kumar, Bj, S., Wedge, Bk, D. C., Bl, Abp, Bm, Wright, M. H., Ar, Yellapantula, V. D., Bn, Gerstein, Bo, Bj, M., Bk, Bp, Khurana, Bq, E., Br, Bs, Marques-Bonet, Bt, Bu, T., Bv, Bw, Navarro, Bx, Bu, A., Bustamante, C. D., Ar, Siebert, By, Bz, R., Nakagawa, Ca, Cb, H., Easton, D. F., Cc, Ossowski, Cd, At, S., Tubio, J. M. C., Ao, De La Vega, F. M., Ar, As, By, Estivill, At, X., Yuen, Ce, Mihaiescu, D. k., Omberg, G. L. n., Cf, L., Ferretti, V. n., Sabarinathan, Cg, Ch, R., Ci, Cj, Pich, Ch, O., Gonzalez-Perez, Cj, Ch, A., Taylor-Weiner, Cj, Ck, A., Fittall, M. W., Cl, Demeulemeester, Cl, J., Tarabichi, Cm, Cl, M., Abp, Roberts, Abp, N. D., Van, Loo, Cl, P., Cortés-Ciriano, Cm, Cn, I., Co, Cp, Urban, L. f., Park, G, Co, P., Zhu, Cp, Cq, B., Pitkänen, E. g., Abp, Y., Saini, Cr, N., Klimczak, L. J., Cs, Weischenfeldt, J. g., Ct, Cu, Sidiropoulos, Cu, N., Alexandrov, L. B., Cv, Abp, Rabionet, At, R., Av, Cw, Escaramis, At, G., Cx, Cy, Bosio, At, Av, Holik, A. Z., At, Susak, At, H., Prasad, Av, Av, A., Erkek, S. g., Calabrese, C. f., Raeder, G, Harrington, B. g., Cz, E., Mayes, Da, S., Turner, Da, D., Juul, Cz, S., Roberts, S. A., Db, Song, Cq, L., Koster, Dc, R., Mirabello, Hua, Cq, X., Tanskanen, T. J., Dd, Tojo, Aq, M., Chen, Bk, J., Aaltonen, De, L. A., Df, Rätsch, Dg, G., Dh, Di, Dj, Dk, Schwarz, Dl, R. F. f., Dm, Dn, Do, Butte, A. J., Dp, Brazma, A. f., Chanock, S. J., Cq, Chatterjee, Dq, N., Stegle, Dr, O. f., G, Harismendy, Ds, Dt, O., Bova, G. S., Du, Gordenin, D. A., Cr, Haan, D. h., Sieverling, Dv, L., Feuerbach, Dw, Chalmers, Dx, D., Joly, Dy, Y., Knoppers, Dy, B., Molnár-Gábor, Dz, F., Phillips, Dy, M., Thorogood, Dy, A., Townend, Dy, D., Goldman, Ea, M., Fonseca, N. A. f., Xiang, Eb, Craft, Q. n., Ea, B., Piñeiro-Yáñez, Ec, E., Muñoz, A. f., Petryszak, R. f., Füllgrabe, A. f., Al-Shahrour, Ec, F., Keays, M. f., Haussler, Ea, D., Weinstein, Ed, Ee, J., Huber, Ef, Valencia, W. g., Am, A., Papatheodorou, Bw, Zhu, I. f., Ea, J., Fan, Ae, Y., Torrents, Am, D., Bieg, Bw, Eg, M., Chen, Eh, Ei, K., Chong, Ej, Z., Cibulskis, K. b., Eils, Aa, R., Ac, Ek, Fulton, El, R. S. y., Z, Gelpi, Ah, J. L., Am, Gonzalez, Em, S. f., G, Gut, I. G., Av, Hach, Bu, En, F., Heinold, Eo, Ac, Hu, Ep, T., Huang, V. k., Hutter, Eh, B., Eq, Er, Jäger, Aa, N., Jung, Es, J., Ep, Y., Lalansingh, C. k., Leshchiner, I. b., Livitz, D. b., E. Z., Ep, Maruvka, Y. E. b., R, Et, Milovanovic, Nielsen, M. M., Eu, Paramasivam, Pedersen, Eh, J. S., Eu, Puiggròs, Ev, Sahinalp, S. C., Eo, Ew, Ex, Sarrafi, Eo, I., Stewart, Ex, Stobbe, C. b., M. D., Av, Wala, Bu, J. A. b., E, Wang, Ey, J. z., Be, Wendl, Ez, M. z., Fa, Werner, Fb, Aa, J., Fc, Wu, Ep, Z., Xue, Ep, H., Yamaguchi, T. N. k., Bn, V., Davis-Dusenbery, Bo, B. N., Fd, Grossman, R. L., Fe, Ff, Y., Heinold, Fg, M. C., Aa, Hinton, Ac, Abp, J., Jones, Abp, D. R., Menzies, Abp, A., Stebbings, Abp, L., Hess, J. M. b., Rosenberg, Et, M. b., R, Dunford, A. J. b., Gupta, M. b., Imielinski, Fh, M., Meyerson, Fi, M. b., E, Beroukhim, Ey, R. b., E, Reimand, Fj, J. k., Q, Dhingra, Br, P., Favero, Bt, Fk, F., Dentro, Bl, S., Abp, Cl, Wintersinger, Fl, J., Fm, Fn, Rudneva, V. g., Park, J. W., Fo, Hong, E. P., Fo, Heo, S. G., Fo, Kahles, Dg, A., Lehmann, K. -V., Dg, Di, Dj, Fp, Fq, Soulette, C. M., Aj, Shiraishi, Al, Y., Liu, Fr, F., Fs, He, Fr, Y., Demircioğlu, Ft, D., Davidson, Fu, N. R., Dg, Dl, Fp, Greger, L. f., Fv, S., Liu, Fw, Fv, D., Stark, Fw, S. G., Dj, Fp, Fx, Zhang, Fy, Amin, S. B., Fz, Ga, Gb, Bailey, Gc, P., Chateigner, A. n., Frenkel-Morgenstern, Gd, M., Hou, Fv, Y., Huska, Fw, M. R., Dm, Kilpinen, Ge, H., Lamaze, F. C. k., Fv, C., Fw, Li, Fv, X., Marin, Fw, M. G., Aj, Markowski, Dm, J., Nandi, Gf, T., Ojesina, A. I., Gg, Gh, Gi, Pan-Hammarström, Fv, Q., Park, Gj, P. J., Co, Pedamallu, Cp, C. S. b., E, Fj, Su, Fv, H., Tan, Fw, Gf, P., Gk, Gl, Teh, Gm, B. T., Gk, Gl, Gm, Gn, Go, Wang, Fv, J., Xiong, Fw, Ye, Yung, Fw, Zhang, C. n., Zheng, Fr, L., Zhu, Awadalla, Fw, P. k., L, Creighton, C. J., Gp, Fv, K., Yang, Fw, Göke, Ft, J., Zhang, Gq, Fr, Z., Brooks, Gr, A. N. b., Aj, Fittall, Ey, Martincorena, Abp, I., Rubio-Perez, Ch, C., Cj, Gs, Eu, M., Schumacher, S. b., Shapira, Gt, O. b., Ey, Tamborero, Ch, D., Mularoni, Cj, Ch, L., Hornshøj, Cj, Eu, H., Deu-Pons, Cj, J., Muiños, Gu, Ch, F., Bertl, Cj, Eu, J., Guo, Gv, Ev, Q., Gonzalez-Perez, Cj, Gw, Xiang, Gx, Q., Bazant, W. f., Barrera, E. f., Al-Sedairy, S. T., Gy, Aretz, Gz, A., Bell, Ha, C., Betancourt, Hb, M., Buchholz, Hc, C., Calvo, Hd, F., Chomienne, He, C., Dunn, Hf, M., Edmonds, Hg, S., Green, Hh, E., Gupta, Hi, S., C. M., Hh, Jegalian, Hj, K., Hk, N., Hl, Y., Hm, Hn, Nakagama, Ho, H., Nettekoven, Hp, G., Planko, Hp, L., Scott, Hk, D., Shibata, Hq, T., Shimizu, Hr, Hs, K., Stratton, Abp, M. R., Yugawa, Hs, T., Tortora, Ht, G., Vijayraghavan, Hu, Hi, K., Zenklusen, J. C., Hv, Hw, D., B. M., Dy, Aminou, B. n., Bartolome, Am, J., Boroevich, K. A., Cb, Boyce, Hx, Buchanan, R. f., Ak, A., Byrne, N. J. n., Hy, Z., Cho, Hz, S., Choi, Ia, W., Clapham, Abp, P., Dow, M. T., Hy, Eils, X, Ek, J., Farcas, El, Hy, C., Fayzullaev, N. n., Flicek, P. f., Heath, A. P., Ib, Hofmann, Ic, O., J. H., Id, Hudson, T. J., Ie, Hübschmann, If, Ac, D., Do, Ek, Ig, Ih, Ivkovic, Ii, S., Jeon, S. -H., Ia, Jiao, W. k., Kabbe, Dj, Fq, Kerssemakers, J. N. A., Aa, Ia, H., Ij, J., Koscher, Ik, M., Koures, Hy, A., Kovacevic, Ii, M., Lawerenz, El, C., Il, J., Mijalkovic, Mijalkovic-Lazic, A. M., Ii, Miyano, Nastic, Nicholson, Ocana, D. f., Ohi, Al, K., Ohno-Machado, Hy, L., Pihl, T. D., Im, Prinz, Radovic, Ii, P., Short, C. f., Sofia, H. J., Hh, Spring, Fe, J., Struck, A. J., Ak, Tijanic, Ii, N., Vicente, Hv, Z., Williams, Woo, Ia, Y., Wright, A. J. k., Yang, Hv, L., Hamilton, M. P., In, Johnson, T. A., Hx, Kahraman, Io, A., Ip, Iq, Kellis, M. b., Polak, Ir, P. b., C, Sallari, E, Sinnott-Armstrong, R. b., N. b., Ar, Von, Mering, Iq, C., Beltran, Is, Av, S., Gerhard, Bu, D. S., It, Av, M., Trotta, Bu, J. -R., Bu, Whalley, J. P., Bu, Niu, Iu, B., Espiritu, S. M. G. k., Gao, Ez, Y., Lalansingh, Iv, Teague, C. M. k., Abp, J. W., Wendl, M. C. z., Fa, Fb, Abascal, Abp, F., Bader, G. D. l., Bandopadhayay, P. b., Iw, Ix, Barenboim, J. k., Brunak, Iy, S., Carlevaro-Fita, Iz, Ja, J., Jb, Jc, Chakravarty, Jd, D., Chan, Je, C. W. Y., Aa, Choi, Dw, J. K., Jf, Diamanti, Jg, K., Fink, Frigola, Jh, Gu, J., Gambacorti-Passerini, Ji, C., Garsed, D. W., Jj, Haradhvala, N. J. b., Harmanci, R, A. O., Bk, Helmy, Jk, Fm, M., Herrmann, Aa, C., Ac, Jl, Hobolth, Ev, A., Hodzic, Gv, Ex, E., Dv, C., Isaev, Dw, K. k., Q, Izarzugaza, J. M. G., Iy, Jb, R., Juul, Jm, R. I., Eu, Kim, J. b., J. K., Jn, Jan, Komorowskijg, Lanzós, Jo, Jb, A., Jc, Jm, Larsson, Dg, E., Lee, Bk, D., Bk, S., Bk, X., Lin, Z. b., Liu, Jp, E. M., Br, Bt, Jq, Lochovsky, Bj, L., Bk, Gb, Lou, Madsen, Bk, Eu, T., Marchal, Jr, K., Martinez-Fundichely, Js, Br, A., Bs, Bt, Mcgillivray, P. D., Bj, Meyerson, Bk, W., Paczkowska, Jt, Park, M. k., Ju, K., Park, Jv, Jw, K., Pons, Jx, T., Pulido-Tamayo, Jr, S., Reyes-Salazar, Js, Ch, I., Reyna, M. A., Jy, Rubin, M. A., Jm, Jz, Ka, Kb, Kc, Salichos, Sander, Bk, Dg, C., Ey, Kd, Schumacher, Ke, S. E. b., Gt, Shackleton, Jj, M., Shen, Ke, C., Shrestha, Kf, Eo, R., Shuai, S. k., Tsunoda, L, Hx, T., Kg, Kh, Umer, Ki, H. M., Jg, Uusküla-Reimand, Kj, Kk, L., Verbeke, Kl, L. P. C., Js, Wadelius, Km, Kn, C., Wadi, L. k., Warrell, Bj, J., Bk, Wu, Ko, G., Kp, J., Zhang, Ez, X., Zhang, Kq, Bk, Y., Kr, Ks, Zhao, Kt, Z., Zou, Ku, L., Lawrence, M. S. b., R, Hx, Raphael, B. J., Jy, P. J., Gc, Craft, D. b., Goldman, Kv, M. J., Ea, Aburatani, Kw, H., Binder, Kx, H., Dinh, Ky, H. Q., Kz, S. C., Av, Hoffmann, Bu, Kx, S., Ky, La, Imbusch, Lb, C. D., Dv, Kretzmer, Ky, H., Laird, Lb, P. W., Lc, Martin-Subero, J. I., Bw, Nagae, Ld, Kw, G., Shen, Le, Lf, H., Ik, Q., Weichenhan, Lg, D., Zhou, Lf, W., Berman, B. P., Kz, Lh, Li, Brors, Dv, B., Er, Lj, Plass, Lg, C., Akdemir, K. C., Ei, Bowtell, D. D. L., Jj, Burns, K. H., Lk, Busanovich, Ll, J. b., Lm, Chan, Ln, K., Dueso-Barroso, Edwards, P. A., Lo, Etemadmoghadam, Lp, Jj, D., Haber, J. E., Lq, D. T. W., Lr, Ls, Ju, Y. S., Jf, Abp, Kazanov, M. D., Lt, Lu, Lv, Koh, Lw, Y., Kumar, Lx, Lee, K. b., E. A., Ly, J. J. -K., Co, Lynch, Cp, A. G., Lo, Lp, Lz, Macintyre, Lo, G., Markowetz, Lo, F., Navarro, Lp, F. C. P., Bj, Pearson, J. V., Ma, Rippe, Mb, Do, K., Scully, Mc, R., Villasante, Am, I., Waddell, Ma, N., Yang, Mb, Md, L., Yao, Fh, X., Yoon, Me, S. -S., Lx, C. -Z. b., E, Ey, Bergstrom, E. N., Mf, Boot, Gl, A., Covington, Mg, Ag, K., Fujimoto, Cb, A., M. N., Gl, Islam, Mg, S. M. A., Cv, Mcpherson, J. R., Gl, Morganella, Mg, Abp, S., Mustonen, Mh, V., Mi, Mj, A. W. T., Mk, Prokopec, S. D. k., Vázquez-García, Bn, I., Ml, Mm, Abp, Wu, Gl, Y., Yousif, Mg, F. k., Yu, Mn, W., Rozen, S. G., Gl, Gm, Mg, Rudneva, V. A. g., S. S., Ar, D. J., Da, Xia, Mo, T., Atwal, G. k., L, Fn, Chang, D. K., Gc, Cooke, Mp, S. L., Gc, Faltas, B. M., Dl, Haider, S. k., Kaiser, V. B., Mq, Karlić, Mr, R., Kato, Ms, M., Kübler, K. b., E, R, Margolin, Martin, Mt, S., Abp, Nik-Zainal, Mu, S., Mv, Mw, Abp, P’Ng, Semple, C. k., C. A., Mq, Smith, Ak, J., Sun, R. X. k., Thai, K. n., D. W., Mx, Yuan, My, Lo, K., Mt, Mz, Biankin, A. V., Gc, Mp, Na, Garraway, Nb, Ey, L., Grimmond, S. M., Nc, Adams, Abp, D. J., Anur, Nd, P., Cao, Ae, S., Christie, E. L., Jj, Cmero, Ne, M., Nf, Ng, Cun, Nh, Y., Dawson, Abp, K. J., S. C., Bl, Deshwar, A. G., Ni, Donmez, Eo, N., Drews, Ex, R. M., Lo, Gerstung, M. f., G, Ha, Haase, G. b., Cl, K., Jerman, L. g., Nj, Ji, Nk, Y., Jolly, Nl, Cl, C., Nm, J., Lee-Six, Abp, H., Malikic, Eo, S., Mitchell, Ex, T. J., Lp, Abp, Nn, Morris, Q. D., Fn, Oesper, No, Np, L., Peifer, Nh, M., Peto, Nq, M., Rosebrock, D. b., Rubanova, Ai, Y., Salcedo, Fn, Sengupta, A. k., Nr, S., Shi, No, R., Shin, S. J., Fy, Spiro, O. b., Vembu, No, S., Wintersinger, Ns, J. A., Fl, T. -P., Nh, Nt, K., Nu, H., Spellman, Nv, P. T., Nw, Weinstein, J. N., Ee, Chen, Ef, Fujita, Cb, M., Han, Kq, L., Hasegawa, Al, T., Komura, Al, M., Ae, J., Mizuno, Nx, S., Shimizu, Al, E., Ny, Xu, Nz, Y., Yamaguchi, Al, R., No, F., Kq, Y., Yoon, C. J., Jf, Yuan, Liang, Ae, H., Alawi, Oa, M., Borozan, Ob, Brewer, I. k., D. S., Oc, Cooper, Od, C. S., Od, Oe, Of, Desai, N. n., Grundhoff, Oa, A., Iskar, Og, Oh, M., Oi, X., Zapatka, Lichter, Eq, P., Alsop, Oh, Jj, K., Bruxner, T. J. C., Jh, Christ, A. N., Jh, Cordner, S. M., Oj, Cowin, P. A., Ok, Drapkin, Ol, R., Fereday, Ok, S., George, Gb, J., Ok, A., Holmes, Ma, O., Hung, Mb, J. A., Om, Kassahn, On, K. S., Jh, Kazakoff, Oo, S. H., Ma, Kennedy, Mb, C. J., Op, Leonard, Oq, C. R., Ma, Mileshkin, Mb, Jj, L., Miller, D. K., Jh, Mp, Or, Arnau, G. M., Ok, Mitchell, Ok, C., Newell, Ma, F., Nones, Mb, Ma, K., Patch, Mb, A. -M., Ma, Quinn, Mb, M. C., Ma, Taylor, Mb, D. F., Jh, Thorne, Ok, H., Traficante, Ok, N., Vedururu, Ok, R., N. M., Mb, Waring, P. M., Os, Wood, Ma, S., Mb, Xu, Ma, Q., Defazio, Mb, Ot, A., Ou, Ov, Anderson, M. J., Jh, Antonello, Ow, D., Barbour, A. P., Ox, Bassi, Oy, Ow, C., Bersani, Oz, S., Cataldo, Oz, I., Chantrill, Pa, L. A., Mp, Chiew, Pb, Y. -E., Ot, Chou, Mp, A., Cingarlini, Pc, Ht, S., Cloonan, Pd, N., Corbo, Pa, V., Davi, Pe, M. V., Pf, Duthie, F. R., Gc, Gill, Pg, A. J., Mp, Graham, Pc, J. S., Gc, Harliwong, Ph, Jh, I., Jamieson, N. B., Gc, Nb, Pi, Johns, A. L., Mp, Kench, Or, J. G., Mp, Pc, Pj, Landoni, Ow, L., Lawlor, R. T., Pa, Mafficini, Pa, A., Merrett, N. D., Ow, Miotto, Pk, Ow, M., Musgrove, E. A., Gc, Nagrial, A. M., Mp, Oien, K. A., Os, Pajic, Pl, Mp, M., Pinese, Pm, M., Robertson, A. J., Jh, Rooman, Mp, I., Rusev, B. C., Pa, Samra, J. S., Ow, Scardoni, Pc, Oz, M., Scarlett, C. J., Mp, Scarpa, Pn, Sereni, Ow, E., Sikora, K. O., Pa, Simbolo, Pe, M., Taschuk, M. L. n., Toon, C. W., Mp, Vicentini, Pa, C., Mp, J., Zeps, Po, N., Behren, Pp, Pq, A., Burke, Pr, H., Cebon, Pq, J., Dagg, R. A., Ps, Paoli-Iseppi, De, Pt, R., Dutton-Regester, Field, M. A., Pu, Fitzgerald, Pv, A., Hersey, Pr, P., Jakrot, Pr, V., Johansson, P. A., Ma, Kakavand, Pt, H., Kefford, R. F., Pw, Lau, L. M. S., Px, Long, G. V., Py, Pickett, H. A., Px, Pritchard, A. L., Ma, Pupo, G. M., Pz, Saw, R. P. M., Py, Schramm, S. -J., Qa, Shang, C. A., Pv, Py, P., Spillane, A. J., Py, Stretch, J. R., Py, Tembe, Ot, V., Thompson, Qa, J. F., Py, Vilain, R. E., Qb, Wilmott, J. S., Py, J. Y., Qc, Hayward, N. K., Ma, Mann, Pr, G. J., Ot, Scolyer, Qd, R. A., Ou, Py, Qb, Bartlett, Qe, Qf, J., Bavi, Qg, Qh, P., Chadwick, D. E., Qi, Chan-Seng-Yue, Qh, M., Cleary, Qh, S., Connor, Qj, A. A., Qj, Czajka, Qk, If, K., Denroche, R. E., Qh, Dhani, N. C., Ql, Eagles, If, J., Gallinger, Qj, Qk, Grant, R. C., Qh, Hedley, Qk, Ql, D., Hollingsworth, M. A., Qm, Jang, G. H., Qh, Kalimuthu, S. -B., Qn, Lungu, Qh, I., Luo, Qo, Mbabaali, X. k., If, F., T. A., Qk, J. K., If, Moore, M. J., Ql, Notta, Qh, F., Pasternack, Qp, If, D., Petersen, G. M., Qq, Roehrl, M. H. A. q., Qh, Qr, Qs, Qt, Sam, If, M., Selander, Qk, I., Serra, Os, S., Shahabi, Qn, S., Thayer, S. P., Qm, Timms, L. E., If, Wilson, G. W. k., Wilson, Qh, J. M., Qh, Wouters, B. G., Qu, J. D., If, Qh, Qv, Beck, T. A. n., Bhandari, Qw, Collins, V. k., C. C., Eo, Fleshner, N. E., Qx, Fox, N. S. k., Fraser, M. k., Heisler, L. E., Qy, Lalonde, E. k., Livingstone, J. k., Meng, Qz, A., Sabelnykova, V. Y. k., Shiah, Y. -J. k., Van der Kwast, Ra, T., Bristow, R. G. q., Rb, Rc, Rd, Re, Ding, Rf, S., Rg, D., Fv, L., Nie, Rg, Y., Xiao, Rh, Xing, Hm, R., Yang, Ri, Rj, Y., Banks, R. E., Rk, Bourque, Rl, G., Brennan, Rm, Rn, P., Letourneau, Ro, L., Riazalhosseini, Rm, Y., Scelo, Rn, G., Vasudev, Rk, N., Viksna, Rp, Rq, J., Lathrop, Rm, M., Tost, Rr, J., Ahn, S. -M., Rs, Aparicio, Rt, S., Arnould, Ru, L., Aure, M. R., Rv, Bhosle, Abp, S. G., Birney, E. f., Borg, Rw, A., Boyault, Rx, S., Brinkman, A. B., Ry, Brock, J. E., Rz, Broeks, Sa, A., Børresen-Dale, A. -L., Rv, Caldas, Sb, C., Chin, Sc, S. -F., Sb, Davies, Sc, Mu, H., Abp, Mv, Desmedt, Sd, C., Dirix, Se, Sf, L., Dronov, Ehinger, Sg, A., Eyfjord, J. E., Sh, Fatima, Gt, A., Foekens, J. A., Si, Futreal, P. A., Sj, Garred, Sk, Ø., Giri, Sl, D. D., Sm, Glodzik, Abp, D., Grabau, Sn, D., Hilmarsdottir, Sh, H., Hooijer, G. K., So, Jacquemier, Sp, J., S. J., Sq, Jonasson, J. G., Sh, Jonkers, Sr, J., H. -Y., Sp, King, T. A., Ss, Knappskog, St, Su, S., Abp, Kong, Sp, G., Krishnamurthy, Sv, S., Lakhani, S. R., Sw, Langerød, Rv, A., Larsimont, Sx, D., H. J., Sq, J. -Y., Sy, M. T. M., Sj, Lingjærde, O. C., Sz, Macgrogan, Ta, G., Martens, J. W. M., Si, O’Meara, Pauporté, He, I., Pinder, Tb, S., Pivot, Tc, X., Provenzano, Td, E., Purdie, C. A., Te, Ramakrishna, Abp, M., Ramakrishnan, Abp, K., Reis-Filho, Sm, J., Richardson, A. L., Gt, Ringnér, Rw, M., Rodriguez, J. B., Am, Rodríguez-González, F. G., Iz, Romieu, Tf, G., Salgado, Os, R., Sauer, Sz, T., Shepherd, Abp, R., Sieuwerts, A. M., Si, Simpson, P. T., Sw, Smid, Si, M., Sotiriou, Span, P. N., Tg, Stefánsson, Ó. A., Th, Stenhouse, Ti, A., Stunnenberg, H. G., Fw, Sweep, Tj, Tk, F., Tan, B. K. T., Tl, Thomas, Tm, G., Thompson, A. M., Ti, Tommasi, Tn, S., Treilleux, To, I., Tutt, Tp, Ueno, N. T., Nv, Van, Laere, Sf, S., Van den Eynden, G. G., Sf, Vermeulen, Sf, P., Viari, Vincent-Salomon, Tj, A., Wong, B. H., Tq, Yates, Abp, X., Van, Deurzen, C. H. M., Tr, van de Vijver, M. J., Os, Van’T, Veer, Ts, L., Ammerpohl, Tt, O., Tu, Tv, Aukema, Tu, S., Tv, Tw, Bergmann, A. K., Tx, Bernhart, S. H., Kx, Ky, Lb, Borkhardt, Ty, A., Borst, Tz, C., Burkhardt, Ua, B., Claviez, Ub, A., Goebler, M. E., Uc, Haake, Tt, A., Haas, Tz, S., Hansmann, Ud, M., Hoell, J. I., Ty, Hummel, Ue, M., Karsch, Uf, D., Klapper, Tw, W., Kneba, Uf, M., Kreuz, Ug, M., Kube, Uh, D., Küppers, Ui, R., Lenze, Ue, D., Loeffler, López, Ca, C., Mantovani-Löffler, Tt, Uj, L., Möller, Uk, P., Ott, Ul, G., Radlwimmer, Oh, B., Richter, Tt, J., Rohde, Tw, Um, M., Rosenstiel, P. C., Un, Rosenwald, Uo, A., Schilhabel, M. B., Un, Schreiber, Up, S., Stadler, P. F., Kx, Staib, Uq, P., Stilgenbauer, Ur, S., Sungalee, S. g., Szczepanowski, Tw, M., Toprak, U. H., Ac, Trümper, Us, L. H. P., Uh, Wagener, Ca, R., Zenz, Tt, Er, T., Hovestadt, Oh, V., Von, Kalle, Do, C., Kool, Korshunov, Lr, Ik, A., Landgraf, Ut, P., Lehrach, Uu, Uv, H., Northcott, P. A., Uw, Pfister, S. M., Ik, Lr, Ux, Reifenberger, Uu, G., Warnatz, H. -J., Uv, Wolf, Uy, S., Yaspo, M. -L., Uv, Assenov, Uz, Y., Gerhauser, Minner, Va, S., Schlomm, Ct, T., Simon, Vb, Vc, R., Sauter, Vc, G., Sültmann, Er, H., Biswas, Vd, N. K., Ve, Maitra, Ve, A., Majumder, P. P., Ve, Sarin, Vf, R., Barbi, Pe, S., Bonizzato, Pa, G., Cantù, Dei, Tos, A. P., Vg, Fassan, Vh, M., Grimaldi, Pa, S., Luchini, Oz, C., Malleo, Ow, G., Marchegiani, Milella, Michele, Ht, M., Paiella, Ow, S., Pea, Ow, A., Pederzoli, Ow, P., Ruzzenente, Salvia, Ow, R., Sperandio, Pa, N., Arai, Hq, Y., Hama, Hq, N., Hiraoka, Vi, N., Hosoda, Hq, F., Nakamura, Hq, H., Ojima, Vj, H., Okusaka, Vk, T., Totoki, Urushidate, Hr, T., Fukayama, Vl, M., Ishikawa, Vm, S., Katai, Vn, H., Katoh, Vm, H., Vm, D., Rokutan, Ms, H., Saito-Adachi, Suzuki, Kw, A., Taniguchi, Vo, Vp, H., Tatsuno, Kw, K., Ushiku, Vl, T., Yachida, Hq, S., Yamamoto, Vq, Kw, S., Aikata, Vr, H., Arihiro, Vr, K., Ariizumi, S. -I., Vs, Chayama, Furuta, Gotoh, Vt, K., Hayami, Vu, S., Hirano, Vv, S., Kawakami, Vr, Y., Maejima, Cb, K., Vv, T., Nakano, Ohdan, Sasaki-Oku, Tanaka, Al, H., Vu, M., Yamamoto, Vs, M., Yamaue, Vu, H., Choo, S. P., Vw, Cutcutache, Gl, I., Khuntikeo, Mg, Ow, N., Ong, Vx, C. K., Vy, Pairojkul, Os, C., Popescu, Vz, I., K. S., Wa, Aymerich, Wb, M., Lopez-Guillermo, Wc, A., López-Otín, Wd, C., Puente, X. S., Wd, Campo, We, E., Amary, Wf, Wg, F., Baumhoer, Wh, D., Behjati, Bjerkehagen, Wh, B., Futreal, Wi, Myklebost, Su, O., Pillay, Wj, N., Tarpey, Wk, P., Tirabosco, Wl, R., Zaikova, Wm, O., Flanagan, A. M., Wn, Boultwood, Wo, J., Bowen, Abp, D. T., Cazzola, Wp, M., A. R., Lp, Hellstrom-Lindberg, Wq, E., Malcovati, Wp, L., Nangalia, Wr, J., Papaemmanuil, Vyas, Ma, P., Ang, Ws, Wt, Y., Barr, Wu, H., Beardsmore, Wv, D., Eldridge, Lo, M., Gossage, Ww, J., Grehan, Mv, N., Hanna, G. B., Wx, Hayes, S. J., Wy, Hupp, Wz, T. R., Xa, Khoo, Xb, D., Lagergren, Wq, J., Lovat, Xc, L. B., Ge, Macrae, Ee, S., O’Donovan, Mv, M., O’Neill, J. R., Xd, Parsons, S. L., Xe, Preston, S. R., Xf, Puig, Xg, S., Roques, Xh, T., Sanders, G. w., Sothi, Xi, S., Tavaré, Lo, S., Tucker, Xj, O., Turkington, Xk, R., Underwood, T. J., Xl, Welch, Xm, I., R. C., Mv, Berney, D. M., Xn, Bono, De, J. 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B., Xg, Tsao, Xe, M., Umbricht, Ye, Lk, C., Abg, Wv, Van Den Berg, D. J., Ym, Van, Meir, Abh, E. G., Veluvolu, U. v., Voet, D. b., Weinberger, Abi, P., Weisenberger, Wigle, Abj, D., Wilkerson, M. D. v., Wilson, R. K. z., Abk, Winterhoff, Abl, B., Wiznerowicz, Abm, M., Abn, Wong, T. z., Yc, Abo, W., Yau, Zhang, H. b., Yd, H., Hv, J., The ICGC/TCGA Pan-Cancer Analysis of Whole Genomes Consortium View Correspondence (jump link), Medical Oncology, Pathology, IBM, Pharmacyclics, Novartis, Celgene, AstraZeneca, Bayer, Janssen Biotech, University of Chicago, Ipsen, Pfizer, Ono Pharmaceutical, Ariad Pharmaceuticals, Gilead Sciences, Bristol-Myers Squibb, University of St Andrews. School of Medicine, University of St Andrews. Statistics, University of St Andrews. Sir James Mackenzie Institute for Early Diagnosis, University of St Andrews. Cellular Medicine Division, RS: CAPHRI - R4 - Health Inequities and Societal Participation, Metamedica, Háskóli Íslands, University of Iceland, Faculty of Medicine, University of Helsinki, Department of Medical and Clinical Genetics, Research Programs Unit, Lauri Antti Aaltonen / Principal Investigator, ATG - Applied Tumor Genomics, Helsinki Institute of Life Science HiLIFE, Organismal and Evolutionary Biology Research Programme, Helsinki Institute for Information Technology, Institute of Biotechnology, Bioinformatics, Department of Computer Science, STEMM - Stem Cells and Metabolism Research Program, Centre of Excellence in Stem Cell Metabolism, Genome-Scale Biology (GSB) Research Program, Department of Physics, HUS Helsinki and Uusimaa Hospital District, University of Zurich, ICGC/TCGA Pan-Cancer Analysis of Whole Genomes Consortium, Apollo - University of Cambridge Repository, Graduate School, Laboratory Genetic Metabolic Diseases, AGEM - Endocrinology, metabolism and nutrition, 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Kakavand, H, Kefford, R, Lau, L, Long, G, Pickett, H, Pritchard, A, Pupo, G, Saw, R, Schramm, S, Shang, C, Shang, P, Spillane, A, Stretch, J, Tembe, V, Thompson, J, Vilain, R, Wilmott, J, Yang, J, Hayward, N, Mann, G, Scolyer, R, Bartlett, J, Bavi, P, Chadwick, D, Chan-Seng-Yue, M, Cleary, S, Connor, A, Czajka, K, Denroche, R, Dhani, N, Eagles, J, Gallinger, S, Grant, R, Hedley, D, Hollingsworth, M, Jang, G, Johns, J, Kalimuthu, S, Liang, S, Lungu, I, Luo, X, Mbabaali, F, Mcpherson, T, Miller, J, Moore, M, Notta, F, Pasternack, D, Petersen, G, Roehrl, M, Sam, M, Selander, I, Serra, S, Shahabi, S, Thayer, S, Timms, L, Wilson, G, Wilson, J, Wouters, B, Beck, T, Bhandari, V, Collins, C, Fleshner, N, Fox, N, Fraser, M, Heisler, L, Lalonde, E, Livingstone, J, Meng, A, Sabelnykova, V, Shiah, Y, Van der Kwast, T, Bristow, R, Ding, S, Fan, D, Li, L, Nie, Y, Xiao, X, Xing, R, Yang, S, Yu, Y, Zhou, Y, Banks, R, Bourque, G, Brennan, P, Letourneau, L, Riazalhosseini, Y, Scelo, G, Vasudev, N, Viksna, J, Lathrop, M, Tost, J, Ahn, S, Aparicio, S, Arnould, L, Aure, M, Bhosle, S, Birney, E, Borg, A, Boyault, S, Brinkman, A, Brock, J, Broeks, A, Borresen-Dale, A, Caldas, C, Chin, S, Davies, H, Desmedt, C, Dirix, L, Dronov, S, Ehinger, A, Eyfjord, J, Fatima, A, Foekens, J, Futreal, P, Garred, O, Giri, D, Glodzik, D, Grabau, D, Hilmarsdottir, H, Hooijer, G, Jacquemier, J, Jang, S, Jonasson, J, Jonkers, J, King, T, Knappskog, S, Kong, G, Krishnamurthy, S, Lakhani, S, Langerod, A, Larsimont, D, Lee, H, Lee, M, Lingjaerde, O, Macgrogan, G, Martens, J, O'Meara, S, Pauporte, I, Pinder, S, Pivot, X, Provenzano, E, Purdie, C, Ramakrishna, M, Ramakrishnan, K, Reis-Filho, J, Richardson, A, Ringner, M, Rodriguez, J, Rodriguez-Gonzalez, F, Romieu, G, Salgado, R, Sauer, T, Shepherd, R, Sieuwerts, A, Simpson, P, Smid, M, Sotiriou, C, Span, P, Stefansson, O, Stenhouse, A, Stunnenberg, H, Sweep, F, Tan, B, Thomas, G, Thompson, A, Tommasi, S, Treilleux, I, Tutt, A, Ueno, N, Van Laere, S, Van den Eynden, G, Vermeulen, P, Viari, A, Vincent-Salomon, A, Wong, B, Yates, L, Zou, X, van Deurzen, C, van de Vijver, M, van't Veer, L, Ammerpohl, O, Aukema, S, Bergmann, A, Bernhart, S, Borkhardt, A, Borst, C, Burkhardt, B, Claviez, A, Goebler, M, Haake, A, Haas, S, Hansmann, M, Hoell, J, Hummel, M, Karsch, D, Klapper, W, Kneba, M, Kreuz, M, Kube, D, Kuppers, R, Lenze, D, Loeffler, M, Lopez, C, Mantovani-Loffler, L, Moller, P, Ott, G, Radlwimmer, B, Richter, J, Rohde, M, Rosenstiel, P, Rosenwald, A, Schilhabel, M, Schreiber, S, Stadler, P, Staib, P, Stilgenbauer, S, Sungalee, S, Szczepanowski, M, Toprak, U, Trumper, L, Wagener, R, Zenz, T, Hovestadt, V, von Kalle, C, Kool, M, Korshunov, A, Landgraf, P, Lehrach, H, Northcott, P, Pfister, S, Reifenberger, G, Warnatz, H, Wolf, S, Yaspo, M, Assenov, Y, Gerhauser, C, Minner, S, Schlomm, T, Simon, R, Sauter, G, Sultmann, H, Biswas, N, Maitra, A, Majumder, P, Sarin, R, Barbi, S, Bonizzato, G, Cantu, C, Dei Tos, A, Fassan, M, Grimaldi, S, Luchini, C, Malleo, G, Marchegiani, G, Milella, M, Paiella, S, Pea, A, Pederzoli, P, Ruzzenente, A, Salvia, R, Sperandio, N, Arai, Y, Hama, N, Hiraoka, N, Hosoda, F, Nakamura, H, Ojima, H, Okusaka, T, Totoki, Y, Urushidate, T, Fukayama, M, Ishikawa, S, Katai, H, Katoh, H, Komura, D, Rokutan, H, Saito-Adachi, M, Suzuki, A, Taniguchi, H, Tatsuno, K, Ushiku, T, Yachida, S, Yamamoto, S, Aikata, H, Arihiro, K, Ariizumi, S, Chayama, K, Furuta, M, Gotoh, K, Hayami, S, Hirano, S, Kawakami, Y, Maejima, K, Nakamura, T, Nakano, K, Ohdan, H, Sasaki-Oku, A, Tanaka, H, Ueno, M, Yamamoto, M, Yamaue, H, Choo, S, Cutcutache, I, Khuntikeo, N, Ong, C, Pairojkul, C, Popescu, I, Ahn, K, Aymerich, M, Lopez-Guillermo, A, Lopez-Otin, C, Puente, X, Campo, E, Amary, F, Baumhoer, D, Behjati, S, Bjerkehagen, B, Myklebost, O, Pillay, N, Tarpey, P, Tirabosco, R, Zaikova, O, Flanagan, A, Boultwood, J, Bowen, D, Cazzola, M, Green, A, Hellstrom-Lindberg, E, Malcovati, L, Nangalia, J, Papaemmanuil, E, Vyas, P, Ang, Y, Barr, H, Beardsmore, D, Eldridge, M, Gossage, J, Grehan, N, Hanna, G, Hayes, S, Hupp, T, Khoo, D, Lagergren, J, Lovat, L, Macrae, S, O'Donovan, M, O'Neill, J, Parsons, S, Preston, S, Puig, S, Roques, T, Sanders, G, Sothi, S, Tavare, S, Tucker, O, Turkington, R, Underwood, T, Welch, I, Fitzgerald, R, Berney, D, De Bono, J, Cahill, D, Camacho, N, Dennis, N, Dudderidge, T, Edwards, S, Fisher, C, Foster, C, Ghori, M, Gill, P, Gnanapragasam, V, Gundem, G, Hamdy, F, Hawkins, S, Hazell, S, Howat, W, Isaacs, W, Karaszi, K, Kay, J, Khoo, V, Kote-Jarai, Z, Kremeyer, B, Kumar, P, Lambert, A, Leongamornlert, D, Livni, N, Luxton, H, Marsden, L, Massie, C, Matthews, L, Mayer, E, Mcdermott, U, Merson, S, Neal, D, Nicol, D, Ogden, C, Rowe, E, Shah, N, Thomas, S, Verrill, C, Visakorpi, T, Warren, A, Whitaker, H, Zhang, H, van As, N, Eeles, R, Abeshouse, A, Agrawal, N, Akbani, R, Al-Ahmadie, H, Albert, M, Aldape, K, Ally, A, Appelbaum, E, Armenia, J, Asa, S, Auman, J, Balasundaram, M, Balu, S, Barnholtz-Sloan, J, Bathe, O, Baylin, S, Benz, C, Berchuck, A, Berrios, M, Bigner, D, Birrer, M, Bodenheimer, T, Boice, L, Bootwalla, M, Bosenberg, M, Bowlby, R, Boyd, J, Broaddus, R, Brock, M, Brooks, D, Bullman, S, Caesar-Johnson, S, Carey, T, Carlsen, R, Cerfolio, R, Chandan, V, Chen, H, Cherniack, A, Chien, J, Cho, J, Chuah, E, Cibulskis, C, Cope, L, Cordes, M, Curley, E, Czerniak, B, Danilova, L, Davis, I, Defreitas, T, Demchok, J, Dhalla, N, Dhir, R, Doddapaneni, H, El-Naggar, A, Felau, I, Ferguson, M, Finocchiaro, G, Fong, K, Frazer, S, Friedman, W, Fronick, C, Fulton, L, Gabriel, S, Gao, J, Gehlenborg, N, Gershenwald, J, Ghossein, R, Giama, N, Gibbs, R, Gomez, C, Govindan, R, Hayes, D, Hegde, A, Heiman, D, Heins, Z, Hepperla, A, Holbrook, A, Holt, R, Hoyle, A, Hruban, R, Hu, J, Huntsman, D, Huse, J, Iacobuzio-Donahue, C, Ittmann, M, Jayaseelan, J, Jefferys, S, Jones, C, Jones, S, Juhl, H, Kang, K, Karlan, B, Kasaian, K, Kebebew, E, Korchina, V, Kundra, R, Lai, P, Lander, E, Le, X, Levine, D, Lewis, L, Ley, T, Li, H, Lin, P, Linehan, W, Lype, L, Ma, Y, Maglinte, D, Mardis, E, Marks, J, Marra, M, Matthew, T, Mayo, M, Mccune, K, Meier, S, Meng, S, Mieczkowski, P, Mikkelsen, T, Miller, C, Mills, G, Moore, R, Morrison, C, Mose, L, Moser, C, Mungall, A, Mungall, K, Mutch, D, Muzny, D, Myers, J, Newton, Y, Noble, M, O'Donnell, P, O'Neill, B, Ochoa, A, Parker, J, Pass, H, Pastore, A, Pennell, N, Perou, C, Petrelli, N, Potapova, O, Rader, J, Ramalingam, S, Rathmell, W, Reuter, V, Reynolds, S, Ringel, M, Roach, J, Roberts, L, Sadeghi, S, Saller, C, Sanchez-Vega, F, Schadendorf, D, Schein, J, Schmidt, H, Schultz, N, Seethala, R, Senbabaoglu, Y, Shelton, T, Shi, Y, Shih, J, Shmulevich, I, Shriver, C, Signoretti, S, Simons, J, Singer, S, Sipahimalani, P, Skelly, T, Smith-McCune, K, Socci, N, Soloway, M, Sood, A, Tam, A, Tan, D, Tarnuzzer, R, Thiessen, N, Thompson, R, Thorne, L, Tsao, M, Umbricht, C, Van Den Berg, D, Van Meir, E, Veluvolu, U, Voet, D, Wang, L, Weinberger, P, Weisenberger, D, Wigle, D, Wilkerson, M, Wilson, R, Winterhoff, B, Wiznerowicz, M, Wong, T, Wong, W, Xi, L, Yau, C, Consortium, ICGC/TCGA Pan-Cancer Analysis of Whole Genomes, Demeulemeester, Jonas, Desmedt, Christine, Van Loo, Peter, Barcelona Supercomputing Center, Imperial College Healthcare NHS Trust- BRC Funding, Cancer Research UK, Basic (bio-) Medical Sciences, and Laboratory for Medical and Molecular Oncology
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Male ,tert promoter mutations ,Cancer development and immune defence Radboud Institute for Molecular Life Sciences [Radboudumc 2] ,DNA Mutational Analysis ,Normal tissue ,systematic analysis ,Germline ,Transcriptome ,0302 clinical medicine ,Aetiology ,Càncer ,Cellular Senescence ,Cancer ,0303 health sciences ,dna-damage ,Massive parallel sequencing ,Pan cancer ,REARRANGEMENTS ,High-Throughput Nucleotide Sequencing ,Genomics ,Sciences bio-médicales et agricoles ,Telomere ,COMPREHENSIVE ,3. Good health ,TERT PROMOTER MUTATIONS ,signatures ,030220 oncology & carcinogenesis ,Science & Technology - Other Topics ,Erfðarannsóknir ,Human ,Informàtica::Aplicacions de la informàtica::Bioinformàtica [Àrees temàtiques de la UPC] ,Evolution ,RNA Splicing ,Article ,Evolution, Molecular ,Structural variation ,RC0254 ,03 medical and health sciences ,SDG 3 - Good Health and Well-being ,Genetic ,genomics ,SYSTEMATIC ANALYSIS ,Genetics ,Genomics--Databases ,Humans ,Genetic Testing ,Molecular Biology ,SIGNATURES ,Whole genome sequencing ,1000 Multidisciplinary ,Chromothripsis ,Science & Technology ,RC0254 Neoplasms. Tumors. Oncology (including Cancer) ,Information Dissemination ,ResearchInstitutes_Networks_Beacons/mcrc ,Prevention ,Biology and Life Sciences ,Molecular ,Oncogenes ,Cloud Computing ,medicine.disease ,Genòmica ,Compute clouds ,Mutation ,570 Life sciences ,biology ,COMPREHENSIVE CHARACTERIZATION ,Genètica ,Whole Genome Sequencing--methods ,Background information ,Genetic / genetics ,Genome ,Germ-Line Mutation / genetics ,Human / genetics ,ICGC/TCGA Pan-Cancer Analysis of Whole Genomes Consortium ,Medizin ,Whole-genome ,Genome mapping ,Neoplasms ,2.1 Biological and endogenous factors ,Promoter Regions, Genetic ,Càncer -- Aspectes genètics ,Telomerase ,Women's cancers Radboud Institute for Molecular Life Sciences [Radboudumc 17] ,Multidisciplinary ,Manchester Cancer Research Centre ,genomics, cancer, profiling ,3rd-DAS ,10124 Institute of Molecular Life Sciences ,Women's cancers Radboud Institute for Health Sciences [Radboudumc 17] ,Multidisciplinary Sciences ,Parallel sequencing ,Female ,profiling ,Medical Genetics ,Engineering sciences. Technology ,Biotechnology ,General Science & Technology ,The Cancer Genome Atlas ,610 Medicine & health ,Computational biology ,QH426 Genetics ,Biology ,Consortium of the International Cancer Genome Consortium ,Promoter Regions ,Germline mutation ,Pan-cancer analysis ,Krabbameinsrannsóknir ,medicine ,cancer ,ddc:610 ,QH426 ,Germ-Line Mutation ,Medicinsk genetik ,Krabbamein ,030304 developmental biology ,Cell Proliferation ,LANDSCAPE ,Genome, Human ,comprehensive characterization ,Pan-cancer analysis of whole genomes ,Point mutation ,Human Genome ,Reproducibility of Results ,SOMATIC MUTATIONS ,EVOLUTION ,Cancer, sequencing, Chromothripsis, telomere ,DNA-DAMAGE ,Mutagenesis ,PATTERNS ,3111 Biomedicine ,CHARACTERIZATION - Abstract
Publisher's version (útgefin grein), Cancer is driven by genetic change, and the advent of massively parallel sequencing has enabled systematic documentation of this variation at the whole-genome scale1,2,3. Here we report the integrative analysis of 2,658 whole-cancer genomes and their matching normal tissues across 38 tumour types from the Pan-Cancer Analysis of Whole Genomes (PCAWG) Consortium of the International Cancer Genome Consortium (ICGC) and The Cancer Genome Atlas (TCGA). We describe the generation of the PCAWG resource, facilitated by international data sharing using compute clouds. On average, cancer genomes contained 4–5 driver mutations when combining coding and non-coding genomic elements; however, in around 5% of cases no drivers were identified, suggesting that cancer driver discovery is not yet complete. Chromothripsis, in which many clustered structural variants arise in a single catastrophic event, is frequently an early event in tumour evolution; in acral melanoma, for example, these events precede most somatic point mutations and affect several cancer-associated genes simultaneously. Cancers with abnormal telomere maintenance often originate from tissues with low replicative activity and show several mechanisms of preventing telomere attrition to critical levels. Common and rare germline variants affect patterns of somatic mutation, including point mutations, structural variants and somatic retrotransposition. A collection of papers from the PCAWG Consortium describes non-coding mutations that drive cancer beyond those in the TERT promoter4; identifies new signatures of mutational processes that cause base substitutions, small insertions and deletions and structural variation5,6; analyses timings and patterns of tumour evolution7; describes the diverse transcriptional consequences of somatic mutation on splicing, expression levels, fusion genes and promoter activity8,9; and evaluates a range of more-specialized features of cancer genomes8,10,11,12,13,14,15,16,17,18., Competing interests Gad Getz receives research funds from IBM and Pharmacyclics and is an inventor on patent applications related to MuTect, ABSOLUTE, MutSig, MSMuTect, MSMutSig and POLYSOLVER. Hikmat Al-Ahmadie is consultant for AstraZeneca and Bristol-Myers Squibb. Samuel Aparicio is a founder and shareholder of Contextual Genomics. Pratiti Bandopadhayay receives grant funding from Novartis for an unrelated project. Rameen Beroukhim owns equity in Ampressa Therapeutics. Andrew Biankin receives grant funding from Celgene, AstraZeneca and is a consultant for or on advisory boards of AstraZeneca, Celgene, Elstar Therapeutics, Clovis Oncology and Roche. Ewan Birney is a consultant for Oxford Nanopore, Dovetail and GSK. Marcus Bosenberg is a consultant for Eli Lilly. Atul Butte is a cofounder of and consultant for Personalis, NuMedii, a consultant for Samsung, Geisinger Health, Mango Tree Corporation, Regenstrief Institute and in the recent past a consultant for 10x Genomics and Helix, a shareholder in Personalis, a minor shareholder in Apple, Twitter, Facebook, Google, Microsoft, Sarepta, 10x Genomics, Amazon, Biogen, CVS, Illumina, Snap and Sutro and has received honoraria and travel reimbursement for invited talks from Genentech, Roche, Pfizer, Optum, AbbVie and many academic institutions and health systems. Carlos Caldas has served on the Scientific Advisory Board of Illumina. Lorraine Chantrill acted on an advisory board for AMGEN Australia in the past 2 years. Andrew D. Cherniack receives research funding from Bayer. Helen Davies is an inventor on a number of patent applications that encompass the use of mutational signatures. Francisco De La Vega was employed at Annai Systems during part of the project. Ronny Drapkin serves on the scientific advisory board of Repare Therapeutics and Siamab Therapeutics. Rosalind Eeles has received an honorarium for the GU-ASCO meeting in San Francisco in January 2016 as a speaker, a honorarium and support from Janssen for the RMH FR meeting in November 2017 as a speaker (title: genetics and prostate cancer), a honorarium for an University of Chicago invited talk in May 2018 as speaker and an educational honorarium paid by Bayer & Ipsen to attend GU Connect ‘Treatment sequencing for mCRPC patients within the changing landscape of mHSPC’ at a venue at ESMO, Barcelona, on 28 September 2019. Paul Flicek is a member of the scientific advisory boards of Fabric Genomics and Eagle Genomics. Ronald Ghossein is a consultant for Veracyte. Dominik Glodzik is an inventor on a number of patent applications that encompass the use of mutational signatures. Eoghan Harrington is a full-time employee of Oxford Nanopore Technologies and is a stock holder. Yann Joly is responsible for the Data Access Compliance Office (DACO) of ICGC 2009-2018. Sissel Juul is a full-time employee of Oxford Nanopore Technologies and is a stock holder. Vincent Khoo has received personal fees and non-financial support from Accuray, Astellas, Bayer, Boston Scientific and Janssen. Stian Knappskog is a coprincipal investigator on a clinical trial that receives research funding from AstraZeneca and Pfizer. Ignaty Leshchiner is a consultant for PACT Pharma. Carlos López-Otín has ownership interest (including stock and patents) in DREAMgenics. Matthew Meyerson is a scientific advisory board chair of, and consultant for, OrigiMed, has obtained research funding from Bayer and Ono Pharma and receives patent royalties from LabCorp. Serena Nik-Zainal is an inventor on a number of patent applications that encompass the use of mutational signatures. Nathan Pennell has done consulting work with Merck, Astrazeneca, Eli Lilly and Bristol-Myers Squibb. Xose S. Puente has ownership interest (including stock and patents in DREAMgenics. Benjamin J. Raphael is a consultant for and has ownership interest (including stock and patents) in Medley Genomics. Jorge Reis-Filho is a consultant for Goldman Sachs and REPARE Therapeutics, member of the scientific advisory board of Volition RX and Paige.AI and an ad hoc member of the scientific advisory board of Ventana Medical Systems, Roche Tissue Diagnostics, InVicro, Roche, Genentech and Novartis. Lewis R. Roberts has received grant support from ARIAD Pharmaceuticals, Bayer, BTG International, Exact Sciences, Gilead Sciences, Glycotest, RedHill Biopharma, Target PharmaSolutions and Wako Diagnostics and has provided advisory services to Bayer, Exact Sciences, Gilead Sciences, GRAIL, QED Therapeutics and TAVEC Pharmaceuticals. Richard A. Scolyer has received fees for professional services from Merck Sharp & Dohme, GlaxoSmithKline Australia, Bristol-Myers Squibb, Dermpedia, Novartis Pharmaceuticals Australia, Myriad, NeraCare GmbH and Amgen. Tal Shmaya is employed at Annai Systems. Reiner Siebert has received speaker honoraria from Roche and AstraZeneca. Sabina Signoretti is a consultant for Bristol-Myers Squibb, AstraZeneca, Merck, AACR and NCI and has received funding from Bristol-Myers Squibb, AstraZeneca, Exelixis and royalties from Biogenex. Jared Simpson has received research funding and travel support from Oxford Nanopore Technologies. Anil K. Sood is a consultant for Merck and Kiyatec, has received research funding from M-Trap and is a shareholder in BioPath. Simon Tavaré is on the scientific advisory board of Ipsen and a consultant for Kallyope. John F. Thompson has received honoraria and travel support for attending advisory board meetings of GlaxoSmithKline and Provectus and has received honoraria for participation in advisory boards for MSD Australia and BMS Australia. Daniel Turner is a full-time employee of Oxford Nanopore Technologies and is a stock holder. Naveen Vasudev has received speaker honoraria and/or consultancy fees from Bristol-Myers Squibb, Pfizer, EUSA pharma, MSD and Novartis. Jeremiah A. Wala is a consultant for Nference. Daniel J. Weisenberger is a consultant for Zymo Research. Dai-Ying Wu is employed at Annai Systems. Cheng-Zhong Zhang is a cofounder and equity holder of Pillar Biosciences, a for-profit company that specializes in the development of targeted sequencing assays. The other authors declare no competing interests.
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- 2020
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81. A high-power spectral beamsplitter for closely spaced frequencies
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A. Rischka, Ch. D. Marciniak, Robert Wolf, and Michael J. Biercuk
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Physics - Instrumentation and Detectors ,Infrared ,Atomic Physics (physics.atom-ph) ,FOS: Physical sciences ,02 engineering and technology ,Beam splitting ,01 natural sciences ,Physics - Atomic Physics ,law.invention ,010309 optics ,Optics ,law ,0103 physical sciences ,Physics ,Sum-frequency generation ,business.industry ,Instrumentation and Detectors (physics.ins-det) ,021001 nanoscience & nanotechnology ,Laser ,Polarization (waves) ,Physical optics ,Atomic and Molecular Physics, and Optics ,Interferometry ,0210 nano-technology ,business ,Beam splitter ,Physics - Optics ,Optics (physics.optics) - Abstract
An experimental realization of a compact, high-power spectral beamsplitter for nearly equal frequencies and identical polarization based on two-beam interference in a free-space Mach-Zehnder interferometer is presented. We demonstrate the power- and cost-efficient generation and subsequent spatial separation of two laser tones from a single sum-frequency-generation stage using double-sideband suppressed-carrier modulation in the infrared, and beam splitting in the visible at high power. The interferometer spectrally splits >98% of the incident power when accounting for bulk absorption. The beamsplitter can be constructed identically for any power or spectral range required for which suitable optics are available., 8 pages, 4 figures
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- 2020
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82. FORMATION OF DOSE RATES AND EFFECTS OF CHRONIC RADIATION EXPOSURE ON AQUATIC BIOTA IN THE CHERNOBYL EXCLUSION ZONE
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Dmitri Gudkov, E. V. Dzyubenko, A. Ye. Kaglyan, V. V. Pavlovsky, A. A. Lavniuk, S. I. Kireev, V. V. Belyaev, N.A. Pomortseva, N. L. Shevtsova, and Ch. D. Ganzha
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Environmental chemistry ,Chronic radiation syndrome ,Environmental science ,Exclusion zone ,Aquatic biota ,Dose rate - Published
- 2020
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83. SOCIETY: OPERATIONAL DEFINITION AND EPISTEMIC GENESIS
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Ch. D. Koprivitsa
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Operational definition ,Rehabilitation ,Physical Therapy, Sports Therapy and Rehabilitation ,General Medicine ,Sociology ,Epistemology - Published
- 2019
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84. Reference Correlations for the Thermal Conductivity of 13 Inorganic Molten Salts
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Marc J. Assael, William A. Wakeham, Konstantinos D. Antoniadis, Ch. D. Chliatzou, and Marcia L. Huber
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Thermal conductivity ,020401 chemical engineering ,Chemistry ,Analytical chemistry ,General Physics and Astronomy ,02 engineering and technology ,General Chemistry ,0204 chemical engineering ,Physical and Theoretical Chemistry ,021001 nanoscience & nanotechnology ,0210 nano-technology ,Article - Abstract
The available experimental data for the thermal conductivity of 13 inorganic molten salts have been critically examined with the intention of establishing thermal conductivity reference correlations. All experimental data have been categorized into primary and secondary data according to the quality of measurement specified by a series of criteria. Standard reference correlations are proposed for the following molten salts (with estimated uncertainties at the 95 % confidence level given in parentheses): LiNO(3) (7 %), NaNO(3) (7 %), KNO(3) (15 %), NaBr (15 %), KBr (15 %), RbBr (15 %), LiCl (17 %), NaCl (20 %), KCl (17 %), RbCl (17%), CsCl (10 %), NaI (17 %), and RbI (20 %).
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- 2019
85. The Bankart lesion of the shoulder: A biomechanical analysis following repair
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Klein, A. H., Harner, Ch. D., and Fu, F. H.
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- 1995
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86. Low-temperature synthesis of chemically homogeneous lead zirconate titanate (PZT) powders by a semi-wet method
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Singh, A. P., Mishra, S. K., Pandey, D., Prasad, Ch. D., and Lal, R.
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- 1993
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87. Welcome Address
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Budayev, Ch.-D., primary
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- 1996
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88. Enhanced Reliable ACK (ERACK) Scheme for Detecting Misbehaving Nodes in MANETs
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D K L V Chandra Mouly and Ch D V Subba Rao
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Scheme (programming language) ,business.industry ,Computer science ,ComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKS ,business ,computer ,Computer network ,computer.programming_language - Abstract
In Mobile Ad Hoc Networks (MANETs), the process of sending end-to-end acknowledgement (ACK) for each packet by the destination, causes unnecessary overhead. This paper proposes an Enhanced Reliable ACK (ERACK) scheme for detecting misbehaving attacks in MANET. Initially, reliable multiple paths are established by measuring the path reliability. For defending the data transferred from the dispatcher, one-way hash chain based Message Authentication Code (MAC) is utilised. If the packet loss count is above a threshold, then Secure ACK (S-ACK) mode is activated which identifies the misbehaving node. The source then generates a Misbehavior Report Authentication (MRA) message which is transmitted to the destination using the path with next higher reliability. By experimental results it is shown that the ERACK method decreases the packet loss and delay while ensuring the successful delivery of MRA to the destination.
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- 2020
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89. Impact assessment of cutting velocity on specific energy consumption of ice fracture process with sharp disc
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E. N. Karelin, A. V. Ganzha, A. S. Lunev, A. S. Satyshev, V. A. Ganzha, G G Voskresensky, Yu F Kaizer, and Ch D. Chavyraa
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History ,Impact assessment ,Environmental science ,Geotechnical engineering ,Fracture process ,Specific energy consumption ,Computer Science Applications ,Education - Abstract
The article discusses the possibility of increasing the efficiency of the working attachments of road machines and their adaptation to work in various conditions, due to the group equipping with single saw blades placed according to specially developed schemes. The main results of studies of the processes of interaction of a saw blade moving in space with a variable speed with ice during its mechanical destruction are presented. The conditions for conducting experimental studies, the composition and general structure of the main and auxiliary laboratory equipment used are described. The main results of laboratory research are stated. Taking these results into account, the specific energy intensity of the process under study was calculated, the graphs of the dependence of the specified parameter on the cutting speed were plotted, and conclusions were formulated on the work. The substantiation of rational operating parameters of saw blades is given, which ensure the minimum specific energy consumption of the process under study.
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- 2020
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90. Automation of management and control system for wellhead equipment of a production well
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A. S. Lunev, V L Tyukanov, V. A. Kramarenko, A. V. Lysyannikov, Yu F Kaizer, Ch D. Chavyraa, A V Kuznetsov, and J. S. Sharshembiev
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History ,Engineering ,business.industry ,Wellhead ,Control system ,Production (economics) ,business ,Automation ,Manufacturing engineering ,Computer Science Applications ,Education - Abstract
This article proposes a version of the management and control system for the wellhead equipment of the production well. It considers the analyzed and confirmed currentness of the use of such a system. The main functions of the system allow continuous control of actuators of the wellhead equipment in real time. It solves the problem of the operational stabilization of pumping equipment and ramping up the well to the optimum operation.
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91. Impact assessment of cutting angle of blade on storage density value of ice cutting process
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V. A. Ganzha, E. N. Karelin, A. S. Lunev, A. V. Ganzha, A. S. Satyshev, Yu F Kaizer, Ch D. Chavyraa, and V. I. Vereshchagin
- Subjects
History ,Blade (geometry) ,Impact assessment ,Process (computing) ,Mechanical engineering ,Value (mathematics) ,Computer Science Applications ,Education ,Mathematics - Abstract
This paper concerns main results of research on interacting process of blade and ice during mechanical corrosion. It describes experimental research conditions and their main results. The paper shows argument of reasonable geometrical parameters of blades providing minimal storage density value of tested process.
- Published
- 2020
- Full Text
- View/download PDF
92. Swarm Assisted Positive Sequence Current Component based Directional Relaying for Transmission Line Protection
- Author
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Prasad, Ch. D, primary, Biswal, Monalisa, additional, and Nayak, Paresh Kumar, additional
- Published
- 2020
- Full Text
- View/download PDF
93. Epidermal Growth Factor as Trigger Mitotic Cleavage in Goat Cumulus Cell
- Author
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Baszary, Ch D U, primary and Moniharapon, M, additional
- Published
- 2020
- Full Text
- View/download PDF
94. FORMATION OF DOSE RATES AND EFFECTS OF CHRONIC RADIATION EXPOSURE ON AQUATIC BIOTA IN THE CHERNOBYL EXCLUSION ZONE.
- Author
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Gudkov, D. I., primary, Kaglyan, A. Ye., additional, Shevtsova, N. L., additional, Pomortseva, N. A., additional, Kireev, S. I., additional, Ganzha, Ch. D., additional, Lavniuk, A. A., additional, Belyaev, V. V., additional, Dzyubenko, E. V., additional, and Pavlovsky, V. V., additional
- Published
- 2020
- Full Text
- View/download PDF
95. Customer’s class transformation for profit maximization in multi-class setting of Telecom industry using probability estimation decision trees
- Author
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Muneiah, Janapati Naga, primary and Subba Rao, Ch D. V., additional
- Published
- 2019
- Full Text
- View/download PDF
96. An Efficient Probability Estimation Decision Tree Postprocessing Method for Mining Optimal Profitable Knowledge for Enterprises with Multi-Class Customers
- Author
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Naga Muneiah, JanapatyI, primary and SubbaRao, Ch D V, primary
- Published
- 2019
- Full Text
- View/download PDF
97. АНОМАЛІЇ СКЕЛЕТА РИБ У ВОДОЙМАХ ІЗ РІЗНИМ РІВНЕМ ЗАБРУДНЕННЯ РАДІОНУКЛІДАМИ
- Author
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Pavlovskyi, V. V., primary, Ganzha, Ch. D., additional, Abramiuk, I. I., additional, Kahlian, O. Ye., additional, and Gudkov, D. I., additional
- Published
- 2019
- Full Text
- View/download PDF
98. Site-resolved imaging of beryllium ion crystals in a high-optical-access Penning trap with inbore optomechanics
- Author
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Ball, H., primary, Marciniak, Ch. D., additional, Wolf, R. N., additional, Hung, A. T.-H., additional, Pyka, K., additional, and Biercuk, M. J., additional
- Published
- 2019
- Full Text
- View/download PDF
99. Reference Correlations for the Viscosity of 13 Inorganic Molten Salts
- Author
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Tasidou, K. Α., primary, Chliatzou, Ch. D., additional, Assael, M. J., additional, Antoniadis, K. D., additional, Mylona, S. K., additional, Huber, M. L., additional, and Wakeham, W. A., additional
- Published
- 2019
- Full Text
- View/download PDF
100. QoS-Aware Service Selection and Multicast Framework for Wireless Mesh Networks
- Author
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Ch. D. V. Subba Rao and A. Narayana Rao
- Subjects
Voice over IP ,Wireless mesh network ,Multicast ,Computer Networks and Communications ,Computer science ,Network packet ,business.industry ,Quality of service ,Distributed computing ,ComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKS ,020206 networking & telecommunications ,02 engineering and technology ,Management Information Systems ,0202 electrical engineering, electronic engineering, information engineering ,Redundancy (engineering) ,020201 artificial intelligence & image processing ,business ,Qos aware ,Computer network ,Data transmission - Abstract
Wireless Mesh Network (WMN) is a multi-hop, multi-path network that has become the most favored method in delivering end-to-end data, voice and video. Data transmission through WMN has the security and reliability, same as the conventional wired networks. Since, WMN has a decentralized topology, maintaining QoS is very crucial. Hence in this work, we propose to develop a WMN that selects services based on high QoS. In order to avoid redundancy in data transmission, in this work we propose to develop an efficient framework for multicasting by determining the most effective path for transmitting the same data towards multiple destination nodes. By simulation results, we show that the proposed technique provides better QoS in terms of throughput and packet delivery ratio.
- Published
- 2016
- Full Text
- View/download PDF
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